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    • 11. 发明授权
    • Electrode plate, liquid crystal device and production thereof
    • 电极板,液晶装置及其制造
    • US06500352B1
    • 2002-12-31
    • US09447276
    • 1999-11-23
    • Toshiaki YoshikawaMakoto KameyamaJunri Ishikura
    • Toshiaki YoshikawaMakoto KameyamaJunri Ishikura
    • C30B3308
    • G02F1/13439G02F1/134336G02F1/1345Y10T428/10
    • An electrode plate is formed by a substrate and a plurality of patterned electrodes formed on the substrate. Each patterned electrode has a laminate structure including a first layer of nickel metal formed on the substrate and a second layer of copper formed thereon. The electrode plate may be prepared by a process including a step of etching such a multi-layer metal electrode-forming film formed on a substrate by spraying an etchant downwardly and uniformly onto the substrate while rotating the substrate at a rotation speed sufficient to allow quick liberation of the etchant from the substrate. The metal electrodes can be formed with good adhesion onto the substrate and with good width and thickness accuracy. By incorporating the electrode plate as a pair of substrates sandwiching a liquid crystal, a liquid crystal device free from transmission delay and rounding of voltage waveforms can be provided.
    • 电极板由基板和形成在基板上的多个图案化电极形成。 每个图案化电极具有层压结构,其包括在基板上形成的第一层镍金属和形成在其上的第二铜层。 电极板可以通过以下工序来制备,该方法包括以下步骤来蚀刻形成在基板上的多层金属电极形成膜:通过将蚀刻剂向下均匀地喷涂到基板上,同时以足以允许快速 从底物释放蚀刻剂。 金属电极可以以良好的粘合力形成在基底上并具有良好的宽度和厚度精度。 通过将电极板作为夹着液晶的一对基板结合,可以提供无传输延迟和电压波形舍入的液晶装置。
    • 14. 发明授权
    • Ultrafine particle film forming method
    • 超细颗粒成膜方法
    • US06497917B2
    • 2002-12-24
    • US09935841
    • 2001-08-24
    • Junri Ishikura
    • Junri Ishikura
    • B05D112
    • C23C14/228C23C14/22C23C14/543
    • To provide a film forming method, a film forming apparatus and a manufacturing method of ultrafine particle films, implementing an efficient and proper film thickness control. The manufacturing method of ultrafine particle films includes the steps of: guiding metal ultrafine particles generated in an ultrafine particle generation chamber together with a carrier gas through a conveying pipe to the film forming chamber; and forming a film on a substrate installed over a stage in the film forming chamber through a nozzle, and the evaporated amount of said evaporation material or the thickness of a formed film is controlled by using either the intensity of the emission spectrum intrinsic to an evaporation material or that of the emission spectrum intrinsic to the carrier gas, or else by using both of these.
    • 提供一种成膜方法,成膜装置和超细颗粒膜的制造方法,实现有效且适当的膜厚控制。 超细颗粒膜的制造方法包括以下步骤:将超细粒子产生室中产生的金属超细颗粒与载气一起通过输送管引导至成膜室; 并且通过喷嘴在安装在成膜室的台上的基板上形成膜,并且通过使用蒸发固有的发射光谱的强度来控制所述蒸发材料的蒸发量或所形成的膜的厚度 材料或载气固有的发射光谱的材料,或通过使用这两者。
    • 15. 发明授权
    • Process for forming non-evaporative getter and method of producing image forming apparatus
    • 用于形成非蒸发吸气剂的方法和制备图像形成装置的方法
    • US06383050B1
    • 2002-05-07
    • US09481561
    • 2000-01-11
    • Junri IshikuraIhachiro GofukuMitsutoshi Hasegawa
    • Junri IshikuraIhachiro GofukuMitsutoshi Hasegawa
    • H01J939
    • C23C14/228C23C14/22H01J7/183H01J29/94
    • The invention provides a getter of high performance capable of immediately absorbing a gas generated in an image forming apparatus, and an image forming apparatus exhibiting little luminance variation with the lapse of time and little luminance fluctuation. It also provides a method for producing a getter at a low temperature not effecting other components and in an arbitrary position in a simple manner with a low cost, thereby being adaptable to various processes. The invention relates to a process for forming a non-evaporative getter by a gas deposition method, and to a method of producing an image forming apparatus provided with an electron source, an image forming member for forming an image by irradiation with an electron beam emitted from the electron source, and a non-evaporative getter in a container, which comprises forming the non-evaporative getter by the above-mentioned process for forming the non-evaporative getter.
    • 本发明提供了能够立即吸收在图像形成装置中产生的气体的高性能的吸气剂,以及随时间流逝和亮度波动小的亮度变化很小的图像形成装置。 本发明还提供了一种在低温下制造吸气剂的方法,其不会以简单的方式以低成本实现其它组分和任意位置,从而适应各种工艺。 本发明涉及一种通过气相沉积法形成非蒸发吸气剂的方法,以及一种制备具有电子源的图像形成装置的方法,用于通过照射电子束照射形成图像的图像形成部件 电子源和容器中的非蒸发吸气剂,其包括通过上述用于形成非蒸发吸气剂的方法形成非蒸发吸气剂。
    • 16. 发明授权
    • Electrode plate with two-layer metal electrodes including copper or silver layer, and flattened anti-oxidation and insulating layers
    • 电极板具有包含铜或银层的双层金属电极,以及平坦化的抗氧化和绝缘层
    • US06184964B2
    • 2001-02-06
    • US09328468
    • 1999-06-09
    • Makoto KameyamaHiroyuki SuzukiToshiaki YoshikawaJunri Ishikura
    • Makoto KameyamaHiroyuki SuzukiToshiaki YoshikawaJunri Ishikura
    • G02F11343
    • G02F1/13439G02F1/133512G02F1/133514G02F1/134336
    • An electrode plate, suitable for constituting a liquid crystal device, includes at least a light-transmissive substrate, a plurality of metal electrodes disposed on the light-transmissive substrate and with spacings therebetween, and an insulating layer disposed at the spacings. Each of the metal electrodes includes a first layer, disposed on the light-transmissive substrate comprising a metal or alloy selected from the group consisting of titanium, chronium, molybdenum, tungsten, aluminum, tantalum and nickel, a second layer comprising copper or silver dispersed on the first layer; and a third layer comprising a metal or alloy selected from the group consisting of molybdenum, tantalum, tungsten, titanium, chromium, nickel, aluminum and zinc and disposed on the second layer. The electrode plate is effective in providing a liquid crystal device with good display qualities, a durability and a productivity through improvements in an adhesiveness to the light-transmissive substrate and an antioxidizing property of the metal electrodes.
    • 适于构成液晶装置的电极板至少包括透光基板,设置在透光基板上并具有间隔的多个金属电极以及间隔设置的绝缘层。 每个金属电极包括设置在透光基底上的第一层,其包括选自钛,次氯酸,钼,钨,铝,钽和镍的金属或合金,包含分散的铜或银的第二层 在第一层; 以及第三层,其包含选自钼,钽,钨,钛,铬,镍,铝和锌的金属或合金,并且设置在第二层上。 电极板通过改善对透光性基材的粘附性和金属电极的抗氧化性,有效地提供具有良好显示质量,耐久性和生产率的液晶装置。